Scalable and High-Quality Monolayer Graphene Transfer onto Polymer Membranes Assisted by Camphor

IF 4.1 2区 化学 Q2 POLYMER SCIENCE Chinese Journal of Polymer Science Pub Date : 2024-10-21 DOI:10.1007/s10118-024-3207-4
Jun-Kan Yue, Jing Liang, Qiao-Yu Tan, Man Chen, Jing-Wen Li, Qing Guo, Run-Lai Li, Qiang Fu
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Abstract

The quest for scalable integration of monolayer graphene into functional composites confronts the bottleneck of high-fidelity transfer onto substrates, crucial for unlocking graphene’s full potential in advanced applications. Addressing this, our research introduces the camphor-assisted transfer (CAT) method, a novel approach that surmounts common issues of residue and structural deformation endemic to existing techniques. Grounded in the sublimation dynamics of camphor, the CAT method achieves a clean, contiguous transfer of centimeter-scale monolayer graphene onto an array of polymer films, including ultra-thin polyethylene films. The resultant ultrathin graphene-polyethylene (gPE) films, characterized by their exceptional transparency and conductivity, reveal the CAT method’s unique ability to preserve the pristine quality of graphene, underscoring its practicality for preparing flexible transparent electrodes by monolayer graphene. In-depth mechanism investigation into the camphor sublimation during CAT has led to a pivotal realization: the porosity of the target polymer substrate is a determinant in achieving high-quality graphene transfer. Ensuring that camphor sublimates initially from the polymer side is crucial to prevent the formation of wrinkles or delamination of graphene. By extensive examination of CAT on a spectrum of commonly used polymer films, including PE, PP, PTFE, PI and PET, we have confirmed this important conclusion. This discovery offers crucial guidance for fabricating monolayer graphene-polymer composite films using methods akin to CAT, underscoring the significance of substrate selection in the transfer process.

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可扩展和高质量的单层石墨烯转移到聚合物膜上
将单层石墨烯集成到功能复合材料中,面临着高保真转移到基板上的瓶颈,这对于释放石墨烯在先进应用中的全部潜力至关重要。为了解决这个问题,我们的研究引入了樟脑辅助转移(CAT)方法,这是一种克服现有技术特有的残留和结构变形的常见问题的新方法。基于樟脑的升华动力学,CAT方法实现了厘米级单层石墨烯的干净、连续转移到一系列聚合物薄膜上,包括超薄聚乙烯薄膜。由此产生的超薄石墨烯-聚乙烯(gPE)薄膜具有优异的透明度和导电性,揭示了CAT方法在保持石墨烯原始质量方面的独特能力,强调了它在用单层石墨烯制备柔性透明电极方面的实用性。对CAT过程中樟脑升华机理的深入研究得出了一个关键的认识:目标聚合物衬底的孔隙率是实现高质量石墨烯转移的决定因素。确保樟脑最初从聚合物侧升华,对于防止石墨烯形成皱纹或分层至关重要。通过对常用聚合物薄膜(包括PE、PP、PTFE、PI和PET)光谱的CAT进行广泛检查,我们证实了这一重要结论。这一发现为使用类似CAT的方法制造单层石墨烯-聚合物复合薄膜提供了重要指导,强调了转移过程中衬底选择的重要性。
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来源期刊
Chinese Journal of Polymer Science
Chinese Journal of Polymer Science 化学-高分子科学
CiteScore
7.10
自引率
11.60%
发文量
218
审稿时长
6.0 months
期刊介绍: Chinese Journal of Polymer Science (CJPS) is a monthly journal published in English and sponsored by the Chinese Chemical Society and the Institute of Chemistry, Chinese Academy of Sciences. CJPS is edited by a distinguished Editorial Board headed by Professor Qi-Feng Zhou and supported by an International Advisory Board in which many famous active polymer scientists all over the world are included. The journal was first published in 1983 under the title Polymer Communications and has the current name since 1985. CJPS is a peer-reviewed journal dedicated to the timely publication of original research ideas and results in the field of polymer science. The issues may carry regular papers, rapid communications and notes as well as feature articles. As a leading polymer journal in China published in English, CJPS reflects the new achievements obtained in various laboratories of China, CJPS also includes papers submitted by scientists of different countries and regions outside of China, reflecting the international nature of the journal.
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